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液泡转运蛋白及其在植物新陈代谢中的重要作用。

Vacuolar transporters and their essential role in plant metabolism.

作者信息

Martinoia Enrico, Maeshima Masayoshi, Neuhaus H Ekkehard

机构信息

Institute of Plant Biology, University of Zürich, Zollikerstr. 107, CH-8008 Zürich, Switzerland.

出版信息

J Exp Bot. 2007;58(1):83-102. doi: 10.1093/jxb/erl183. Epub 2006 Nov 16.

Abstract

Following the unequivocal demonstration that plants contain at least two types of vacuoles, scientists studying this organelle have realized that the plant 'vacuome' is far more complex than they expected. Some fully developed cells contain at least two large vacuoles, with different functions. Remarkably, even a single vacuole may be subdivided and fulfil several functions, which are supported in part by the vacuolar membrane transport systems. Recent studies, including proteomic analyses for several plant species, have revealed the tonoplast transporters and their involvement in the nitrogen storage, salinity tolerance, heavy metal homeostasis, calcium signalling, guard cell movements, and the cellular pH homeostasis. It is clear that vacuolar transporters are an integrated part of a complex cellular network that enables a plant to react properly to changing environmental conditions, to save nutrients and energy in times of plenty, and to maintain optimal metabolic conditions in the cytosol. An overview is given of the main features of the transporters present in the tonoplast of plant cells in terms of their function, regulation, and relationships with the microheterogeneity of the vacuome.

摘要

在明确证明植物含有至少两种类型的液泡之后,研究这种细胞器的科学家们意识到植物的“液泡体系”比他们预期的要复杂得多。一些完全成熟的细胞含有至少两个具有不同功能的大液泡。值得注意的是,即使是单个液泡也可能被细分并履行多种功能,这部分由液泡膜运输系统支持。最近的研究,包括对几种植物物种的蛋白质组分析,已经揭示了液泡膜转运蛋白及其在氮储存、耐盐性、重金属稳态、钙信号传导、保卫细胞运动和细胞pH稳态中的作用。显然,液泡转运蛋白是复杂细胞网络的一个组成部分,使植物能够对不断变化的环境条件做出适当反应,在富足时期节省养分和能量,并在细胞质中维持最佳代谢条件。本文就植物细胞液泡膜中转运蛋白的功能、调控及其与液泡体系微观异质性的关系,对其主要特征进行了综述。

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